The effect of the effective electron mass on the hot electron collection

Dengcheng Lu , Cunyun Xu , Yuanxin Zhong , Jun Dong , Xiaofeng He , Hongyu Bian , Pengju Guo , Wenqi Zeng , Zezhuan Jiang , Zhongjun Dai , QunLiang Song
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引用次数: 1

Abstract

The dominant factor for hot electron collecting in internally photoemitted hot carrier (IPHC) devices is still not clear under steady-state low intensity light. We here use SnO2 as the electron-collecting layer to replace TiO2 to construct IPHC devices. Almost no photoresponse is observed for the pure SnO2-based IPHC device. However, when an insulating MgO layer or TiO2 covered SnO2, relatively large photocurrent generated from hot electrons can be achieved. The effective electron mass (EEM) is figured out to be the dominate factor in hot electron collection in IPHC devices. The very small EEM of SnO2 results in a small emission cone of hot electrons. Also due to the small EEM of SnO2, the leakage of trapped electrons back to the Au is very large. Because of these two reasons, the SnO2-based IPHC device shows almost no photoresponse. MgO can block the backflow of electrons (leakage), while the larger EEM of TiO2 can increase the emission cone of hot electrons. Our finding is significant for understanding hot electrons collection and will give new directions for hot carrier solar cell applications under low-intensity excitation at steady state.

有效电子质量对热电子收集的影响
在稳态低强度光下,内部光发射热载流子(IPHC)器件中热电子收集的主导因素仍然不清楚。我们在这里使用SnO2作为电子收集层来代替TiO2来构建IPHC器件。对于纯SnO2基IPHC器件几乎没有观察到光响应。然而,当绝缘MgO层或TiO2覆盖SnO2时,可以实现由热电子产生的相对大的光电流。有效电子质量(EEM)被认为是IPHC器件中热电子收集的主要因素。SnO2的非常小的EEM导致热电子的小发射锥。同样由于SnO2的小EEM,捕获的电子向Au的泄漏非常大。由于这两个原因,基于SnO2的IPHC器件几乎没有显示出光响应。MgO可以阻挡电子的回流(泄漏),而TiO2的较大EEM可以增加热电子的发射锥。我们的发现对理解热电子收集具有重要意义,并将为稳态低强度激发下的热载流子太阳能电池应用提供新的方向。
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